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(EuxRE1-x)(β-NTA)3Phen配合物的合成、表征及荧光性能研究

Synthesis,Characterization and Photoluminescence Properties of (EuxRE1-x)(β-NTA)3Phen Complexes

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【作者】 王连蒙; 赵永亮; 张梅; 高德青;

【Author】 WANG Lian-meng1,ZHAO Yong-liang1,2,ZHANG Mei1,GAO De-qing31.College of Chemistry and Chemical Engineering,Inner Mongolia University,Huhhot 010021,China2.State Key Lab of Rare Earth Material Chemistry and Applications,Peking University,Beijing 100871,China3.Wuppertal University,Wuppertal 42119,Germany

【机构】 内蒙古大学化学化工学院; 五普塔尔大学;

【摘要】 在无水乙醇溶液中合成了以铕及铕掺入不同比例的Y3+或Tb3+为中心,以β-萘基甲酰三氟丙酮(β-NTA)和邻菲咯啉(phen)为配体的配合物;对其进行了元素分析、摩尔电导、核磁共振氢谱、差热-热重、红外光谱分析及荧光性能的研究。其化学组成式为(EuxY1-x)(β-NTA)3Phen及(EuxTb1-x)(β-NTA)3Phen(x=0.1;0.3;0.5;0.7;0.9);摩尔电导测试数据表明,所有配合物均为非电解质;核磁共振氢谱和红外光谱表明,配体β-NTA通过烯醇式氧负离子采用双齿配位的形式与稀土离子配位,Phen的两个氮原子也与稀土离子双齿配位;荧光光谱实验结果表明,所有激发光谱都为一宽带峰,配体能很好的吸收能量,在惰性不发光Y3+的含量x小于0.3,发光Tb3+的含量小于0.5时,可以使Eu3+的特征荧光发射得到一定程度增强,这表明两种不同的离子都可以敏化Eu3+。

【Abstract】 Two series of solid complexes of EuxRE1-x(β-NTA)3phen(RE=Y3+ and Tb3+,x=0.10,0.30,0.50,0.70,0.90) were synthesized in alcohol.They were characterized by elemental analysis,IR spectra,molar conductivity,1H NMR spectra and TG-DTA.The molar conductivity indicated that all the complexes were nonelectrolyte;and 1H NMR spectra and IR spectra showed that the ligand coordinates(double-tooth) with RE3+ ions through the oxygen negative ion of enolic form of β-NTA and the two nitrogen atoms of phen.The fluorescence properties of these complexes were studied,the results indicated that the chemical bonds have formed by the rare earth ions with the two ligands energy can be transferred from the ligand to the RE3+,and the excited spectra was very wide showing that energy transfer was efficient,the fluorescence emission intensity of 5D0→7F2 transitions in the strongest according to the emission spectra of the complexes.So the authors choose this energy transition as the research object and the results showed that the emission intensity of Eu3+ ion can be enhanced if a part of Eu3+ ions were substituted by Y3+ or Tb3+ ions.But the concentration of the Y3+ or Tb3+ ions can influence the fluorescence emission intensity of the rare earth complexes.The authors changed the concentration of Y3+ and Tb3+ in order to find the proper proportion.Finally the authors found that if the x<0.3 for the complexes EuxY1-x(β-NTA)3 phen can get higher fluorescence intensity than pure Eu3+ system,but compared with the concentration of Y3+,the proportion of Tb3+ is different.The result showed that if x<0.5 the authors can get higher fluorescence intensity.In all,at a proper proportion of the doping ions(Y3+ or Tb3+) the authors can get higher fluorescence intensity.This doping method not only decreases the cost of materials,but also enhances the fluorescence intensity,so it has a bright future in practical application.

【基金】 国家自然科学基金项目(20461002);教育部春晖计划基金(Z2004-2-15029)资助
  • 【文献出处】 光谱学与光谱分析 ,Spectroscopy and Spectral Analysis , 编辑部邮箱 ,2008年08期
  • 【分类号】O614.33
  • 【被引频次】5
  • 【下载频次】161
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